Yi Wenkai, Yan Jian
Department of Biomedical Sciences Tung Biomedical Sciences Centre City University of Hong Kong Kowloon Tong Hong Kong.
Department of Precision Diagnostic and Therapeutic Technology The City University of Hong Kong Shenzhen Research Institute Shenzhen 518016 China.
Adv Genet (Hoboken). 2025 May 12;6(2):2500011. doi: 10.1002/ggn2.202500011. eCollection 2025 Jun.
RNA-protein interactions are fundamental to cellular processes such as gene regulation and RNA metabolism. Over the past decade, significant advancements in methodologies have transformed the ability to study these interactions with unprecedented resolution and specificity. This review systematically compares RNA- and protein-centric approaches, highlighting their strengths, limitations, and optimal applications. RNA-centric methods, including hybridization-based pulldowns, proximity labeling, and CRISPR-assisted techniques, enable the identification of proteins interacting with specific RNAs, even low-abundance or transient partners. Protein-centric strategies, such as immunoprecipitation-based CLIP-seq, and emerging proximity-tagging methods, map RNA interactomes of RNA-binding proteins with nucleotide precision. This study evaluates key innovations like LACE-seq and ARTR-seq, which minimize cell input requirements, and HyPro-MS, which bypasses genetic modifications. Guidelines for method selection are provided, emphasizing experimental goals, RNA abundance, interaction dynamics, and technical constraints. Critical challenges are also discussed, including capturing low-affinity interactions, resolving RNA structural complexities, and integrating multi-omics data. This review underscores the importance of method-tailoring to biological contexts, offering a roadmap for researchers to navigate the evolving landscape of RNA-protein interaction studies. By bridging technical advancements with practical recommendations, this study aims to accelerate discoveries in RNA biology, therapeutic development, and precision medicine.
RNA-蛋白质相互作用是基因调控和RNA代谢等细胞过程的基础。在过去十年中,方法学上的重大进展改变了我们以前所未有的分辨率和特异性研究这些相互作用的能力。本综述系统地比较了以RNA为中心和以蛋白质为中心的方法,突出了它们的优势、局限性和最佳应用。以RNA为中心的方法,包括基于杂交的下拉法、邻近标记法和CRISPR辅助技术,能够鉴定与特定RNA相互作用的蛋白质,甚至是低丰度或瞬时相互作用的伙伴。以蛋白质为中心的策略,如基于免疫沉淀的CLIP-seq和新兴的邻近标记方法,能够以核苷酸精度绘制RNA结合蛋白的RNA相互作用组图谱。本研究评估了关键创新技术,如可将细胞输入要求降至最低的LACE-seq和ARTR-seq,以及无需基因改造的HyPro-MS。文中提供了方法选择指南,强调了实验目标、RNA丰度、相互作用动态和技术限制。同时也讨论了关键挑战,包括捕获低亲和力相互作用、解析RNA结构复杂性以及整合多组学数据。本综述强调了根据生物学背景定制方法的重要性,为研究人员在不断发展的RNA-蛋白质相互作用研究领域中导航提供了路线图。通过将技术进步与实际建议相结合,本研究旨在加速RNA生物学发现、治疗开发和精准医学的发展。